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Age and annual growth rate cause spatial variation in body size in

机译:年龄和年增长率导致体型的空间变化

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摘要

Whether or not biogeographic rules dealing with spatial patterns of animal body sizes are valid for ectotherms is controversial. As the ectotherms grow all their lives, we explored the role of age and annual growth rate in body size variation in Phrynocephalus przewalskii in northern China. Morphological data were collected from 11 populations across a broad geographic gradient. Correlations between age, sex, climatic factors, and body size were analyzed using generalized linear model (GLM) and generalized linear mixed model (GLMM). GLM analysis indicated that the general body size of both sexes and the appendage size of females increased significantly with increasing temperature; however, the coefficient of determination was very small. GLMM analysis indicated that body size only correlated with age, whereas appendage size was affected by age, temperature, rainfall, and sunshine. Annual growth rates were positively correlated with temperature. We concluded that body size variation was mainly caused by age structure and plasticity of the growth rate in P. przewalskii and did not follow Bergmann's rule; however, females followed Allen's rule. Future studies to investigate the effect of energy restriction are needed to further understand the relationship between growth rate and body size. We also suggest that further studies on thermal advantage and sexual selection may be helpful to understand appendage size variation in P. przewalskii.
机译:是否与动物体尺寸的空间模式的生物地理规则无论是有效的,异常是否有争议。随着EctoTherms的所有生命,我们探讨了在中国北方山脉骨髓球菌的身体大小变化中的年龄和年增长率的作用。从11个群体中收集形态学数据,横跨宽阔的地理梯度。使用广义线性模型(GLM)和广义线性混合模型(GLMM)分析年龄,性,气候因子和体型之间的相关性。 GLM分析表明,随着温度的增加,女性的一般体积和女性的阑尾大小显着增加;然而,测定系数非常小。 GLMM分析表明,身体大小只与年龄相关,而附属物大小受年龄,温度,降雨和阳光的影响。年度增长率与温度正相关。我们得出结论,体型变异主要是由P.Przewalskii的年龄结构和增长率的年龄结构和可塑性造成的,并不遵循博格曼的规则;然而,女性跟进了艾伦的规则。未来的研究需要进行能量限制的影响,以进一步了解生长速度和体型之间的关系。我们还表明,关于热优势和性选择的进一步研究可能有助于了解P.Przewalskii的附属物大小变化。

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